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Shimadzu Quadrupole Time-of-Flight Liquid Chromatograph Mass Spectrometer LCMS-9030

Brochures and specifications | 2020 | ShimadzuInstrumentation
LC/TOF, LC/HRMS, LC/MS, LC/MS/MS
Industries
Manufacturer
Shimadzu

Summary

Significance of the Topic


The development of high-resolution accurate-mass (HRAM) mass spectrometry addresses critical needs in qualitative and quantitative analysis across pharmaceutical, environmental, food safety, and biomedical research. By delivering unparalleled mass measurement accuracy and sensitivity, modern quadrupole time-of-flight (Q-TOF) instruments enable reliable identification of unknowns, trace-level quantitation, and resolution of isobaric interferences, thereby improving confidence in analytical results and streamlining workflows.

Objectives and Overview of the Study


This application note introduces the LCMS-9030, Shimadzu’s latest Q-TOF mass spectrometer, outlining its design innovations, performance characteristics, and practical applications. The goals are to demonstrate:
  • Enhanced mass measurement accuracy (MMA) stability over extended operation.
  • Improved sensitivity and selectivity at trace concentration levels.
  • Effective structural elucidation via high-quality MS/MS spectra.
  • Isobaric compound separation without complete chromatographic resolution.
  • Compatibility with existing triple quadrupole methods and versatile ionization sources.

Methodology and Instrumentation


The LCMS-9030 integrates newly patented Shimadzu technologies:
  • UF-Lens™ and UF-Qarray™ ion guides plus a UFsweeper™ III collision cell for high ion transmission and accumulation (UFaccumulation™).
  • UFgrating™ electrodes enabling ultrafast ion pulsing at elevated voltages and a stacked-plate reflectron (UF-FlightTube™) for stable, high-resolution operation.
  • Intelligent Temperature Control System to minimize MMA drift under laboratory temperature fluctuations.
  • Multiple ionization options: standard ESI, optional APCI, DUIS™ (combined ESI/APCI), and microflow Micro-ESI 9030 for enhanced sensitivity with Nexera Mikros™.
  • LabSolutions Insight Explore™ software with “Assign” for structural confirmation, “Analyze” for compound search, and ReSpect™ deconvolution for multivalent ions.

Main Results and Discussion


  • MMA Stability: Continuous measurements over 60 hours with a single calibration showed masses within ±1 ppm for analytes from 150 to 1700 Da, enabling long, calibration-free batches.
  • Wide-Range Quantitation: Verapamil injections from 10 fg to 500 pg/mL produced extracted ion chromatograms (±5 ppm window) with <6 % RSD and mass error <1 ppm, supporting low-level quantitation.
  • Consistent MS/MS Accuracy: Collision-induced fragment ions of cyclosporine exhibited <1 mDa error; tighter tolerances (≤1 ppm) reduced formula candidates to one, enhancing structural elucidation.
  • Isobaric Separation: Three isobaric metabolites spiked in whole blood (10 ng/mL) were resolved solely by HRAM, despite overlapping retention times, preventing cross-talk and improving selectivity.
  • Method Transfer: Source and collision cell parameters align with Shimadzu’s triple quadrupole line, simplifying migration of MRM methods; CE Spread function yields high-quality DDA spectra comparable to merged fixed-energy runs.

Benefits and Practical Applications


The LCMS-9030’s combination of speed, sensitivity, and mass accuracy enables:
  • High-confidence screening and quantitation of trace-level compounds in bioanalysis and environmental testing.
  • Accurate formula assignment and structural identification of unknowns in metabolomics and natural product research.
  • Reliable quantitation in complex matrices by isolating analytes from isobaric interferences.
  • Streamlined workflows with reduced calibration frequency and seamless integration into existing labs.

Future Trends and Potential Applications


Ongoing advancements in ion optics, real-time data processing, and software-driven automation will further extend Q-TOF capabilities. Emerging applications include:
  • Integrated high-throughput metabolomics and lipidomics platforms.
  • Automated impurity profiling in drug development using AI-driven interpretation.
  • Ambient ionization techniques coupled with HRAM for in situ analysis.
  • Expanded use in proteomics with improved deconvolution algorithms for large biomolecules.

Conclusion


The Shimadzu LCMS-9030 sets a new benchmark for Q-TOF mass spectrometry by combining innovative hardware and software to deliver exceptional mass accuracy, sensitivity, and resolution. Its robust design and versatile ionization options facilitate diverse analytical workflows, enabling researchers to achieve confident identification and quantitation of challenging analytes while improving laboratory efficiency.

Reference


No external literature citations were provided in the source document.

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